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Formulation and comparative in vitro evaluation of various dexamethasone-loaded pH-sensitive polymeric nanoparticles intended for dermal applications

机译:用于皮肤应用的各种地塞米松负载的pH敏感聚合物纳米粒子的配制和对比体外评价

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pH-sensitive nanoparticles have a great potential for dermal and transfollicular drug delivery. In this study, pH-sensitive, dexamethasone-loaded Eudragit (R) L 100, Eudragit (R) L 100-55, Eudragit (R) S 100, HPMCP-50, HPMCP-55 and cellulose acetate phthalate nanoparticles were prepared by nanoprecipitation and characterized. The pH-dependent swelling, erosion, dissolution and drug release kinetics were investigated in vitro using dynamic light scattering and Franz diffusion cells, respectively. Their toxicity potential was assessed by the ROS and MTT assays. 100-700 nm nanoparticles with high drug loading and entrapment efficiency were obtained. The nanoparticles bear no toxicity potential. Cellulose phthalates nanoparticles were more sensitive to pH than acrylates nanoparticles. They dissolved in 10 mM pH 7.5 buffer and released > 80% of the drug within 7 h. The acrylate nanoparticles dissolved in 40 mM pH 7.5 buffer and released 65-70% of the drug within 7 h. The nanoparticles remained intact in 10 and 40 mM pH 6.0 buffers (HPMCP nanoparticles dissolved in 40 mM pH 6.0 buffer) and released slowly. The nanoparticles properties could be modulated by blending the different polymers. In conclusion, various pH-sensitive nanoparticles that could release differently on the skin surface and dissolve and release in the hair follicles were obtained. (C) 2016 Elsevier B.V. All rights reserved.
机译:pH敏感性纳米粒子具有真皮和经卷积药物递送的巨大潜力。在该研究中,通过纳米尺寸制备通过纳米沉淀制备pH敏感的地塞塞内酮负载的eudragit100,eudragit100,hpmcp-50,Hpmcp-50和醋酸纤维素乙酸盐肽纳米粒子并表征。在体外使用动态光散射和Franz扩散细胞在体外研究了pH依赖性肿胀,腐蚀,溶解和药物释放动力学。通过ROS和MTT测定评估它们的毒性潜力。获得100-700nm纳米粒子,具有高药物负载和夹带效率。纳米颗粒没有毒性潜力。纤维素邻苯二甲酸酯纳米颗粒比丙烯酸酯纳米颗粒更敏感。它们溶于10mM pH7.5缓冲液中并在7小时内释放> 80%的药物。将丙烯酸酯纳米颗粒溶于40mM pH 7.5缓冲液中,并在7小时内释放出65-70%的药物。纳米颗粒在10和40mM pH 6.0缓冲液中保持完整(HPMCP纳米颗粒溶解在40mM pH6.0缓冲液中)并缓慢释放。纳米颗粒性能可以通过混合不同的聚合物来调节。总之,获得可以在皮肤表面上释放的各种pH敏感的纳米颗粒并在毛囊中溶解和释放。 (c)2016 Elsevier B.v.保留所有权利。

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